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On the Performance of Random Cognitive mmWave Sensor Networks

机译:随机认知毫米波传感器网络的性能

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摘要

This paper investigates the secrecy performance of a cognitive millimeter wave (mmWave) wiretap sensor network, where the secondary transmitter (SU-Tx) intends to communicate with a secondary sensor node under the interference temperature constraint of the primary sensor node. We consider that the random-location eavesdroppers may reside in the signal beam of the secondary network, so that confidential information can still be intercepted. Also, the interference to the primary network is one of the critical issues when the signal beam of the secondary network is aligned with the primary sensor node. Key features of mmWave networks, such as large number of antennas, variable propagation law and sensitivity to blockages, are taken into consideration. Moreover, an eavesdropper-exclusion sector guard zone around SU-Tx is introduced to improve the secrecy performance of the secondary network. By using stochastic geometry, closed-form expression for secrecy throughput (ST) achieved by the secondary sensor node is obtained to investigate secrecy performance. We also carry out the asymptotic analysis to facilitate the performance evaluation in the high transmit power region. Numerical results demonstrate that the interference temperature constraint of the primary sensor node enables us to balance secrecy performance of the secondary network, and provides interesting insights into how the system performance of the secondary network that is influenced by various system parameters: eavesdropper density, antenna gain and sector guard zone radius. Furthermore, blockages are beneficial to improve ST of the secondary sensor node under certain conditions.
机译:本文研究了认知毫米波(mmWave)窃听传感器网络的保密性能,其中辅助发送器(SU-Tx)打算在主传感器节点的干扰温度约束下与辅助传感器节点进行通信。我们认为随机位置的窃听者可能驻留在辅助网络的信号束中,因此仍可以截获机密信息。另外,当次级网络的信号束与初级传感器节点对准时,对初级网络的干扰也是关键问题之一。毫米波网络的关键特征,例如大量天线,可变传播定律和对阻塞的敏感度,已得到考虑。此外,引入了SU-Tx周围的窃听者除外扇区保护区,以提高辅助网络的保密性能。通过使用随机几何,获得了次级传感器节点实现的保密吞吐量(ST)的闭式表达式,以研究保密性能。我们还进行了渐近分析,以促进在高发射功率区域中的性能评估。数值结果表明,主要传感器节点的干扰温度约束使我们能够平衡次要网络的保密性能,并提供有趣的见解,以了解次要网络的系统性能如何受到各种系统参数的影响:窃听者密度,天线增益和扇区保护区半径。此外,在某些情况下,阻塞有助于提高辅助传感器节点的ST。

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